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Helper-independent piggyBac plasmids for gene delivery approaches: Strategies for avoiding potential genotoxic effects

机译:不依赖辅助基因的piggyBac质粒用于基因传递方法:避免潜在遗传毒性作用的策略

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摘要

Efficient integration of functional genes is an essential prerequisite for successful gene delivery such as cell transfection, animal transgenesis, and gene therapy. Gene delivery strategies based on viral vectors are currently the most efficient. However, limited cargo capacity, host immune response, and the risk of insertional mutagenesis are limiting factors and of concern. Recently, several groups have used transposon-based approaches to deliver genes to a variety of cells. The piggyBac (pB) transposase in particular has been shown to be well suited for cell transfection and gene therapy approaches because of its flexibility for molecular modification, large cargo capacity, and high transposition activity. However, safety considerations regarding transposase gene insertions into host genomes have rarely been addressed. Here we report our results on engineering helper-independent pB plasmids. The single-plasmid gene delivery system carries both the piggyBac transposase (pBt) expression cassette as well as the transposon cargo flanked by terminal repeat element sequences. Improvements to the helper-independent structure were achieved by developing new plasmids in which the pBt gene is rendered inactive after excision of the transposon from the plasmid. As a consequence, potentially negative effects that may develop by the persistence of an active pBt gene posttransposition are eliminated. The results presented herein demonstrate that our helper-independent plasmids represent an important step in the development of safe and efficient gene delivery methods that should prove valuable in gene therapy and transgenic approaches.
机译:功能基因的有效整合是成功进行基因传递(例如细胞转染,动物转基因和基因治疗)的必要先决条件。基于病毒载体的基因递送策略目前是最有效的。然而,有限的货物容量,宿主免疫反应和插入诱变的风险是限制因素并且值得关注。最近,几个研究小组使用了基于转座子的方法将基因传递到各种细胞中。尤其是piggyBac(pB)转座酶已被证明非常适合细胞转染和基因治疗方法,因为它具有分子修饰的灵活性,大载货量和高转座活性。然而,很少有关于转座酶基因插入宿主基因组的安全性考虑。在这里,我们报告我们的工程无关的pB质粒的结果。单质粒基因递送系统既携带piggyBac转座酶(pBt)表达盒,又携带侧接末端重复元件序列的转座子货物。通过开发新的质粒实现了对不依赖于助手的结构的改进,在该质粒中,将转座子从质粒上切除后,pBt基因变得无活性。结果,消除了可能由于活性pBt基因转座后的持久性而产生的潜在负面影响。本文介绍的结果表明,我们的非依赖辅助质粒代表了安全有效的基因传递方法开发的重要步骤,该方法应在基因治疗和转基因方法中被证明是有价值的。

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